Department of Computer Engineering, Sharif University of Technology, Tehran, Iran.
Chaos. 2013 Mar;23(1):013146. doi: 10.1063/1.4794436.
In this paper, we investigated phase synchronization in delayed dynamical networks. Non-identical spiking Hindmarsh-Rose neurons were considered as individual dynamical systems and coupled through a number of network structures such as scale-free, Erdős-Rényi, and modular. The individual neurons were coupled through excitatory chemical synapses with uniform or distributed time delays. The profile of spike phase synchrony was different when the delay was uniform across the edges as compared to the case when it was distributed, i.e., different delays for the edges. When an identical transmission delay was considered, a quasi-periodic pattern was observed in the spike phase synchrony. There were specific values of delay where the phase synchronization reached to its peaks. The behavior of the phase synchronization in the networks with non-uniform delays was different with the former case, where the phase synchrony decreased as distributed delays introduced to the networks.
在本文中,我们研究了时滞动力网络中的相位同步。非同源的尖峰 Hindmarsh-Rose 神经元被视为单个动力系统,并通过多种网络结构(如无标度、Erdős-Rényi 和模块)进行耦合。个体神经元通过具有统一或分布时滞的兴奋性化学突触进行耦合。与延迟分布的情况相比,当延迟在边线上统一时,尖峰相位同步的模式不同,即边线上的延迟不同。当考虑相同的传输延迟时,在尖峰相位同步中观察到准周期模式。在延迟达到峰值的特定值时,相位同步达到峰值。在具有非均匀延迟的网络中,相位同步的行为与前一种情况不同,随着网络中引入分布延迟,相位同步会降低。